Electrospun anatase-phase TiO2 nanofibers with different morphological structures and specific surface areas

被引:52
作者
He, Guangfei [1 ]
Cai, Yibing [2 ,3 ]
Zhao, Yong [2 ]
Wang, Xiaoxu [4 ]
Lai, Chuilin [1 ]
Xi, Min [1 ]
Zhu, Zhengtao [1 ,2 ,4 ]
Fong, Hao [1 ,2 ,4 ]
机构
[1] South Dakota Sch Mines & Technol, Program Mat Engn & Sci, Rapid City, SD 57701 USA
[2] South Dakota Sch Mines & Technol, Dept Chem & Appl Biol Sci, Rapid City, SD 57701 USA
[3] Jiangnan Univ, Minist Educ, Key Lab Ecotext, Wuxi 214122, Jiangsu, Peoples R China
[4] South Dakota Sch Mines & Technol, Program Nanosci & Nanoengn, Rapid City, SD 57701 USA
基金
中国国家自然科学基金; 美国国家航空航天局; 美国国家科学基金会;
关键词
Titania; Electrospinning; Nanofiber; Morphological structure; Specific surface area; PHOTOCATALYTIC PROPERTIES; ENVIRONMENTAL APPLICATIONS; TITANIA NANOFIBERS; HOLLOW NANOFIBERS; FIBERS; FABRICATION; POLYMER; NANOSTRUCTURE; COMPOSITE; TUBES;
D O I
10.1016/j.jcis.2013.02.009
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electrospun anatase-phase TiO2 nanofibers with desired morphological structure and relatively high specific surface area are expected to outperform other nanostructures (e.g., powder and film) of TiO2 for various applications (particularly dye-sensitized solar cell and photo-catalysis). In this study, systematic investigations were carried out to prepare and characterize electrospun anatase-phase TiO2 nanofibers with different morphological structures (e.g., solid, hollow/tubular, and porous) and specific surface areas. The TiO2 nanofibers were generally prepared via electrospinning of precursor nanofibers followed by pyrolysis at 500 degrees C. For making hollow/tubular TiO2 nanofibers, the technique of co-axial electrospinning was utilized; while for making porous TiO2 nanofibers, the etching treatment in NaOH aqueous solution was adopted. The results indicated that the hollow/tubular TiO2 nanofibers (with diameters of similar to 300-500 nm and wall-thickness in the range from tens of nanometers to similar to 200 nm) had the BET specific surface area of similar to 27.3 m(2)/g, which was approximately twice as that of the solid TiO2 nanofibers (similar to 15.2 m(2)/g) with diameters of similar to 200-300 nm and lengths of at least tens of microns. Porous TiO2 nanofibers made from the precursor of Al2O3/TiO2 composite nanofibers had the BET specific surface area of similar to 106.5 m(2)/g, whereas porous TiO2 nanofibers made from the precursor of ZnO/TiO2 composite nanofibers had the highest BET specific surface area of similar to 148.6 m(2)/g. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:103 / 111
页数:9
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